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    • 10. 发明授权
    • Cryogenically generated compressed gas core projectiles and related methods thereof
    • 低温生成的压缩气体核心射弹及其相关方法
    • US09551554B2
    • 2017-01-24
    • US14821909
    • 2015-08-10
    • The United States of America as represented by the Secretary of the Navy
    • Jules PienkosBart Gilliatt
    • F42B12/34F42B30/02F42B33/00
    • F42B12/34F42B30/02
    • Exemplary projectiles and methods associated therewith including embodiments formed with an internal cavity adapted to receive and retain a cryogenic material into said cavity and then generate a first internal gas upon thermal equalization with said projectile as well as a first internal gas pressure within said cavity. Exemplary embodiments include a structure adapted for maintaining structural integrity after generation of the first internal gas pressure and a second internal gas pressure that is created upon the firing of the projectile. In some embodiments, the second internal gas pressure is more than twice the first internal gas pressure. Some embodiments are adapted with a portion of the projectile formed for displacing away or laterally from an axis formed through a longitudinal center of the projectile upon an impact from striking an object after firing based in part on internal gas pressure and an impact at cavity wall section rupture zones.
    • 示例性的射弹和与之相关的方法包括形成有内腔的实施例,其适于将低温材料接收并保持在所述空腔中,然后在与所述射弹进行热均衡时产生第一内部气体以及所述空腔内的第一内部气体压力。 示例性实施例包括适于在产生第一内部气体压力之后保持结构完整性的结构和在射弹发射时产生的第二内部气体压力。 在一些实施例中,第二内部气体压力是第一内部气体压力的两倍以上。 一些实施例适用于一部分弹丸,其形成用于在由部分由内部气体压力和空腔壁部分产生冲击的冲击之后,从形成穿过射弹的纵向中心的轴线偏离或横向偏移 破裂带。